Microstructure of additive manufactured materials for plasma-facing components of future fusion reactors

微观结构 融合 材料科学 等离子体 聚变能 核工程 复合材料 工程类 核物理学 物理 语言学 哲学
作者
Daniel Ahlin Heikkinen Wartacz,H. Becker,Steffen Antusch,N. Ordás,Carsten Gundlach,O.V. Mishin,Wolfgang Pantleon
出处
期刊:IOP conference series [IOP Publishing]
卷期号:1310 (1): 012004-012004
标识
DOI:10.1088/1757-899x/1310/1/012004
摘要

Abstract Two metallic materials considered for the divertor in fusion reactors are manufactured by powder bed fusion through electron beam melting: tungsten as armor of plasma-facing components and an age-hardenable CuCrZr alloy as heat sink material for the divertor. Cuboids are additively manufactured from both materials, and cross sections containing the build direction are characterized by electron backscatter diffraction. A peculiar heterogeneity is observed in the microstructure of tungsten and traced to the scanning strategy. Large columnar grains along the building direction with slight outward inclination are seen on both sides of the cross section i.e. where grains are observed in viewing planes perpendicular to the printing direction. Grains appear only slightly elongated in the center; neither their entire length nor their inclination is detected when the plane of view contains the printing direction. Many incidental twin boundaries are identified in the CuCrZr alloy; their occurrence is rationalized by the presence of an almost perfect <110> fiber texture. Additionally, X-ray computed tomography confirmed the low porosity of the CuCrZr specimen.

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